摘要
与传统化学品相比,纳米颗粒(NPs)表现出独特的性质,这给样品制备和分析带来了挑战。分馏技术,特别是中空纤维流场流分馏(HF5),最近在纳米材料的表征和定量中变得流行,因为它们在纳米级范围内具有精细的分馏能力。在处理NP时,分馏过程中的一大缺点是分馏装置,管材和连接器中的颗粒损失。有必要进行研究,以系统地探索和评估分馏过程的质量。使用两种互补的基于质量的设置的组合来确定HF5中的粒子损失。电感耦合等离子体质谱(ICP-MS)能够估计HF5分离后NPs的回收率。反过来,激光烧蚀ICP-MS(LA-ICP-MS)允许评估中空纤维上保留的颗粒。本研究评估了不同浓度的15 nm Au-NPs,并根据完全HF5分离运行后的应用浓度显示Au-NPs的回收率为50 – 65%。通过LA-ICP-MS检测中空纤维上的样品沉积表明样品损失约为8%。这些发现对于依赖于低浓度纳米颗粒样品分馏的实验非常重要。
关键词: 表征,特别是中空纤维流场流分馏 (HF5),连字, 电感 耦合等离子体质谱(ICP-MS),纳米颗粒,激光烧蚀ICP-MS(LA-ICP-MS)。
Current Medicinal Chemistry
Title:ICP-MS-based Approach to Determine Nanoparticle Recovery After Hollow Fiber Flow Field Flow Fractionation
Volume: 29 Issue: 2
关键词: 表征,特别是中空纤维流场流分馏 (HF5),连字, 电感 耦合等离子体质谱(ICP-MS),纳米颗粒,激光烧蚀ICP-MS(LA-ICP-MS)。
摘要: Compared to the classical chemicals, nanoparticles (NPs) exhibit unique properties, which lead to challenges in sample preparation and analysis. Fractionation techniques and, in particular, hollow fiber flow field flow fractionation (HF5) have recently become popular in the characterization and quantification of nanomaterials, because of their fine fractionation capability in the nanoscale-range. When dealing with NPs, a great drawback during fractionation is the loss of particles in the fractionation devices, tubing and connectors. There is a need for studies to systematically explore and assess the quality of the fractionation process. A combination of two complementary mass-based setups was used to determine particle loss in HF5. Inductively coupled plasma mass spectrometry (ICP-MS) enabled the estimation of recovery rates for NPs after HF5 separation. Reciprocally, laser ablation ICP-MS (LA-ICP-MS) permitted the evaluation of particles retained on the hollow fiber. 15 nm Au-NPs in different concentrations were evaluated in this study and showed a recovery level for Au-NPs of 50 – 65% based on the applied concentrations after a complete HF5 separation run. Detection of sample deposition on the hollow fiber by LA-ICP-MS indicated a sample loss of about 8%. These findings are important for experiments relying on fractionation of low concentrated nanoparticulate samples.
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Cite this article as:
ICP-MS-based Approach to Determine Nanoparticle Recovery After Hollow Fiber Flow Field Flow Fractionation, Current Medicinal Chemistry 2022; 29 (2) . https://dx.doi.org/10.2174/0929867328666210222094913
DOI https://dx.doi.org/10.2174/0929867328666210222094913 |
Print ISSN 0929-8673 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-533X |
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